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伯氨喹与二氨基喹唑啉杂合分子抗疟原虫的设计、合成及体外评价

Design, Synthesis and in vitro Evaluation of Primaquine and Diaminoquinazoline Hybrid Molecules Against the Malaria Parasite.

作者信息

Kore Mukul, Rao Anjani G, Acharya Dimple, Kirwale Shrikant S, Bhanot Amritansh, Govekar Abhishek, Mohanty Ajeet Kumar, Roy Aniruddha, Vembar Shruthi S, Sundriyal Sandeep

机构信息

Department of Pharmacy, Birla Institute of Technology and Science Pilani, Pilani Campus, Rajasthan, 333031, India.

Institute of Bioinformatics and Applied Biotechnology, Helix Biotech Park, Electronics City Phase I, Bengaluru, Karnataka, 560100, India.

出版信息

Chem Asian J. 2025 Mar 17;20(6):e202401366. doi: 10.1002/asia.202401366. Epub 2025 Jan 24.

Abstract

In this study, we built on the known inhibitory potential of diaminoquinazolines (DAQs) against different stages of Plasmodium development and designed a convenient two-step synthesis to combine DAQ with primaquine (PQ) pharmacophore. The PQ-DAQ hybrids displayed potent in vitro activities in the low nanomolar range (IC 135.20-398.80 nM) against all intra-erythrocytic stages of the drug-sensitive 3D7 strain, with significant potency enhancement compared to PQ alone (IC 9370 nM). These hybrids were also potent at killing drug-resistant strains (Dd2, Dd2 R539T, IPC4912, CamWT C580Y, and 7G8) in the nanomolar range, with 11 f being the most effective compound (IC 172.20-396.60 nM). Notably, for the first time, we present evidence that the DAQ-based compound 8 and its hybrids can inhibit β-hematin formation in vitro with potency (IC 0.90-27.80 μM), suggesting hemozoin formation to be one of the potential targets of this series. Lastly, two hybrids with potent antiplasmodial activity were also found to be safe up to 10 μM against human HepG2 cells, suggesting the possibility of achieving host vs parasite selectivity with this series.

摘要

在本研究中,我们基于已知的二氨基喹唑啉(DAQs)对疟原虫不同发育阶段的抑制潜力,设计了一种简便的两步合成方法,将DAQ与伯氨喹(PQ)药效基团相结合。PQ-DAQ杂合物在低纳摩尔范围内(IC为135.20 - 398.80 nM)对药物敏感的3D7株的所有红细胞内阶段均表现出强大的体外活性,与单独的PQ相比(IC为9370 nM),效力显著增强。这些杂合物在纳摩尔范围内对耐药菌株(Dd2、Dd2 R539T、IPC4912、CamWT C580Y和7G8)也有强大的杀伤力,其中11 f是最有效的化合物(IC为172.20 - 396.60 nM)。值得注意的是,我们首次提供证据表明,基于DAQ的化合物8及其杂合物能够在体外抑制β-血红素的形成(IC为0.90 - 27.80 μM),这表明疟色素的形成是该系列化合物的潜在靶点之一。最后,还发现两种具有强大抗疟活性的杂合物在浓度高达10 μM时对人HepG2细胞是安全的,这表明该系列化合物有可能实现宿主与寄生虫的选择性。

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